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    • 8. 发明授权
    • Wind energy system and method of operation thereof
    • 风能系统及其运行方法
    • US07560823B2
    • 2009-07-14
    • US11428035
    • 2006-06-30
    • Vincent Schellings
    • Vincent Schellings
    • F03D9/00H02P9/04
    • F03D7/0204F03D7/0224F03D7/0272F03D7/0292F03D7/046F05B2240/96F05B2270/1033F05B2270/20F05B2270/32F05B2270/321F05B2270/322F05B2270/323F05B2270/324F05B2270/335F05B2270/404F05B2270/708Y02E10/723
    • A method for operating a wind energy system is provided comprising the steps of setting the value of an operational parameter of the wind energy system, measuring a yield parameter of the wind energy system and measuring a condition parameter. Further, the method comprises the step of calculating an optimized value of the operational parameter based on historical data and the outcome of the measurements. The method further comprises the step of resetting the operational parameter to the optimized value of the operational parameter wherein the resetting is such that the yield parameter is optimized. Further, a wind energy system is provided having a sensor unit for measuring a yield parameter of the wind energy system, a sensor for measuring a condition parameter, an actuator for adjustment of at least one adjustable part of the wind energy system, and a self-learning controller. The self-learning controller is connected to the sensor unit and the actuator and receives measurement data from the sensor unit. The self-learning controller performs optimization calculations based on the measurement data and sends instruction signals to the actuator based on the outcome of the optimization calculations for the adjustment of the adjustable part of the wind energy system. The instruction signals are such that the yield parameter is optimized.
    • 提供了一种用于操作风能系统的方法,包括以下步骤:设置风能系统的操作参数的值,测量风能系统的产量参数并测量条件参数。 此外,该方法包括基于历史数据和测量结果计算操作参数的优化值的步骤。 该方法还包括将操作参数重置为操作参数的优化值的步骤,其中重置使得良率参数被优化。 此外,提供了一种风能系统,其具有用于测量风能系统的屈服参数的传感器单元,用于测量状态参数的传感器,用于调节风能系统的至少一个可调整部分的致动器,以及自我 学习控制器 自学习控制器连接到传感器单元和执行器,并从传感器单元接收测量数据。 自学习控制器基于测量数据执行优化计算,并根据调整风能系统可调节部分的优化计算结果向执行器发送指令信号。 指令信号使得yield参数被优化。
    • 9. 发明申请
    • WIND ENERGY SYSTEM AND METHOD OF OPERATION THEREOF
    • 风能系统及其运行方法
    • US20080001409A1
    • 2008-01-03
    • US11428035
    • 2006-06-30
    • Vincent Schellings
    • Vincent Schellings
    • H02P9/04
    • F03D7/0204F03D7/0224F03D7/0272F03D7/0292F03D7/046F05B2240/96F05B2270/1033F05B2270/20F05B2270/32F05B2270/321F05B2270/322F05B2270/323F05B2270/324F05B2270/335F05B2270/404F05B2270/708Y02E10/723
    • A method for operating a wind energy system is provided comprising the steps of setting the value of an operational parameter of the wind energy system, measuring a yield parameter of the wind energy system and measuring a condition parameter. Further, the method comprises the step of calculating an optimized value of the operational parameter based on historical data and the outcome of the measurements. The method further comprises the step of resetting the operational parameter to the optimized value of the operational parameter wherein the resetting is such that the yield parameter is optimized. Further, a wind energy system is provided having a sensor unit for measuring a yield parameter of the wind energy system, a sensor for measuring a condition parameter, an actuator for adjustment of at least one adjustable part of the wind energy system, and a self-learning controller. The self-learning controller is connected to the sensor unit and the actuator and receives measurement data from the sensor unit. The self-learning controller performs optimization calculations based on the measurement data and sends instruction signals to the actuator based on the outcome of the optimization calculations for the adjustment of the adjustable part of the wind energy system. The instruction signals are such that the yield parameter is optimized.
    • 提供了一种用于操作风能系统的方法,包括以下步骤:设置风能系统的操作参数的值,测量风能系统的产量参数并测量条件参数。 此外,该方法包括基于历史数据和测量结果计算操作参数的优化值的步骤。 该方法还包括将操作参数重置为操作参数的优化值的步骤,其中重置使得良率参数被优化。 此外,提供了一种风能系统,其具有用于测量风能系统的屈服参数的传感器单元,用于测量状态参数的传感器,用于调节风能系统的至少一个可调整部分的致动器,以及自我 学习控制器 自学习控制器连接到传感器单元和执行器,并从传感器单元接收测量数据。 自学习控制器基于测量数据执行优化计算,并根据调整风能系统可调节部分的优化计算结果向执行器发送指令信号。 指令信号使得yield参数被优化。